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首页> 外文期刊>The Journal of Physiology >A dual action of saturated fatty acids on electrical activity in rat pancreatic beta-cells. Role of volume-regulated anion channel and KATP channel currents.
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A dual action of saturated fatty acids on electrical activity in rat pancreatic beta-cells. Role of volume-regulated anion channel and KATP channel currents.

机译:饱和脂肪酸对大鼠胰腺β细胞电活动的双重作用。体积调节的阴离子通道和KATP通道电流的作用。

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摘要

Free fatty acids (FFAs) exert complex actions on pancreatic beta-cells. Typically, an initial potentiation of insulin release is followed by a gradual impairment of beta-cell function, the latter effect being of possible relevance to hyperlipidaemia in type 2 diabetes mellitus. The molecular actions of FFAs are poorly understood. The present study investigated the acute effects of saturated FFAs on electrophysiological responses of rat pancreatic beta-cells. Membrane potential and KATP channel activity were recorded using the perforated patch technique. Volume-regulated anion channel (VRAC) activity was assessed from conventional whole-cell recordings. Cell volume regulation was measured using a video-imaging technique. Addition of octanoate caused a transient potentiation of glucose-induced electrical activity, followed by a gradual hyper-polarisation and a prolonged inhibition of electrical activity. Octanoate caused an initial increase in VRAC activity followed by a secondary inhibition coinciding with increased KATP channel activity. Similar effects were observed with palmitate and 2-bromopalmitate whereas butyrate was virtually ineffective. Octanoate and palmitate also exerted a dual effect on electrical activity evoked by tolbutamide. Octanoate significantly attenuated cell volume regulation in hypotonic solutions, consistent with VRAC inhibition. It is concluded that medium and long chain FFAs have a dual action on glucose-induced electrical activity in rat pancreatic beta-cells: an initial stimulatory effect followed by a secondary inhibition. These effects appear to be the result of reciprocal actions on VRAC and KATP channel currents, and could contribute towards the stimulatory and inhibitory actions of FFAs on pancreatic beta-cell function.
机译:游离脂肪酸(FFA)对胰腺β细胞发挥复杂作用。通常,胰岛素释放的最初增强作用之后是β细胞功能的逐渐损害,后者的作用可能与2型糖尿病的高脂血症有关。 FFA的分子作用了解甚少。本研究调查了饱和FFA对大鼠胰腺β细胞电生理反应的急性影响。使用穿孔膜片技术记录膜电位和KATP通道活性。体积调节的阴离子通道(VRAC)活性是根据常规的全细胞记录评估的。使用视频成像技术测量细胞体积调节。辛酸酯的添加引起葡萄糖诱导的电活动的瞬时增强,随后逐渐的超极化和电活动的长期抑制。辛酸引起VRAC活性的最初增加,其后是与KATP通道活性增加相伴的继发抑制作用。棕榈酸酯和2-溴棕榈酸酯观察到相似的效果,而丁酸酯实际上无效。辛酸酯和棕榈酸酯还对甲苯磺丁酰胺引起的电活动产生双重影响。辛酸大大降低了低渗溶液中的细胞体积调节,与VRAC抑制作用一致。结论是,中链和长链FFA对大鼠胰岛β细胞中葡萄糖诱导的电活动具有双重作用:最初的刺激作用,然后是继发性抑制作用。这些作用似乎是对VRAC和KATP通道电流采取相互作用的结果,并且可能有助于FFA对胰腺β细胞功能的刺激和抑制作用。

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